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Genetic Transformation System for the Fungal Soybean Pathogen Cercospora kikuchii

机译:真菌性大豆致病菌Cercospora kikuchii的遗传转化系统

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摘要

An altered β-tubulin gene that confers resistance to the fungicide benomyl was isolated from a genomic library of a UV-induced mutant of Cercospora kikuchii and used as a selectable marker for transformation. The level of benomyl resistance conferred to the transformants was at least 150-fold greater than the intrinsic resistance of the C. kikuchii recipient protoplasts. In the majority of cases, the tubulin fragment was integrated at the native β-tubulin locus, apparently by gene replacement or gene conversion. The frequency of transformation ranged from 0.2 to 6 transformants per μg of DNA, depending on the recipient strain. Transformation with linearized plasmid resulted in a higher frequency, without changing the type of integration event. Transformants were phenotypically stable after eight consecutive transfers on medium without benomyl. This is the first report of a genetic transformation system for a Cercospora species.
机译:从紫外线诱导的菊苣尾孢菌突变体的基因组文库中分离了赋予对杀真菌剂苯菌灵抗性的改变的β-微管蛋白基因,并将其用作转化的选择标记。赋予转化子的苯菌灵抗性水平比菊苣弯曲杆菌受体原生质体的固有抗性至少高150倍。在大多数情况下,微管蛋白片段显然是通过基因置换或基因转换整合在天然β-微管蛋白基因座上的。转化的频率范围为每微克DNA 0.2至6个转化子,具体取决于受体菌株。用线性化质粒转化导致更高的频率,而没有改变整合事件的类型。在没有苯菌灵的培养基上连续八次转移后,转化子在表型上稳定。这是Cercospora物种的遗传转化系统的首次报道。

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